Abebe Anteneh Hailu, Aranovich Alexander, Fishov Itzhak
Department of Life Sciences, Ben-Gurion University of the Negev, PO Box 653, Beer-Sheva 8410501, Israel.
Medical Biotechnology Unit, Institute of Biotechnology, Addis Ababa University, PO Box 1176, Addis Ababa, Ethiopia.
FEMS Microbiol Lett. 2017 Oct 16;364(19). doi: 10.1093/femsle/fnx195.
DNA-binding proteins play an important role in maintaining bacterial chromosome structure and functions. Heat-unstable (HU) histone-like protein is one of the most abundant of these proteins and participates in all major chromosome-related activities. Owing to its low sequence specificity, HU fusions with fluorescent proteins were used for general staining of the nucleoid, aiming to reveal its morphology and dynamics. We have exploited a single chromosomal copy of hupA-egfp fusion under the native promoter and used quantitative microscopy imaging to investigate the amount and dynamics of HUα in Escherichia coli cells. We found that in steady-state growing populations the cellular HUα content is proportional to the cell size, whereas its concentration is size independent. Single-cell live microscopy imaging confirmed that the amount of HUα exponentially increases during the cell cycle, but its concentration is maintained constant. This supports the existence of an auto-regulatory mechanism underlying the HUα cellular level, in addition to reflecting the gene copy number. Both the HUα amount and concentration strongly increase with the cell growth rate in different culture media. Unexpectedly, the HU/DNA stoichiometry also remarkably increases with the growth rate. This last finding may be attributed to a higher requirement for maintaining the chromosome structure in nucleoids with higher complexity.
DNA结合蛋白在维持细菌染色体结构和功能方面发挥着重要作用。热不稳定(HU)组蛋白样蛋白是这些蛋白中含量最为丰富的蛋白之一,并参与所有与染色体相关的主要活动。由于其序列特异性较低,HU与荧光蛋白的融合物被用于类核的常规染色,旨在揭示其形态和动态变化。我们利用天然启动子下的hupA-egfp融合基因的单染色体拷贝,并使用定量显微镜成像技术来研究大肠杆菌细胞中HUα的含量和动态变化。我们发现,在稳态生长群体中,细胞内HUα的含量与细胞大小成正比,而其浓度与细胞大小无关。单细胞实时显微镜成像证实,HUα的含量在细胞周期中呈指数增加,但其浓度保持恒定。这不仅支持了除反映基因拷贝数外,HUα细胞水平存在一种自动调节机制,还反映了基因拷贝数。在不同培养基中,HUα的含量和浓度均随细胞生长速率的增加而显著增加。出乎意料的是,HU/DNA化学计量比也随生长速率显著增加。这一最新发现可能归因于对维持更高复杂性类核中染色体结构有更高的要求。